Antti Vepsäläinen

About Antti Vepsäläinen

Antti Vepsäläinen, With an exceptional h-index of 21 and a recent h-index of 20 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of Quantum engineering, Quantum computing.

His recent articles reflect a diverse array of research interests and contributions to the field:

Suppressing leakage in sub-10-ns single-qubit gates using heuristic pulse shape engineering

Suppressing errors in quantum circuits using real-time, closed-loop feedback

Scaling qubit-resonator architectures for co-design quantum computing

Qubit-resonator gates for co-design quantum computing.

Reducing leakage of single-qubit gates for superconducting quantum processors using analytical control pulse envelopes

Fast Qubit Frequency Tuning Approaches for High-Fidelity CZ Gates in Superconducting Circuits

Active noise cancelation in superconducting Qubits using closed-loop feedback

On-demand directional microwave photon emission using waveguide quantum electrodynamics

Antti Vepsäläinen Information

University

Position

Postdoctoral researcher

Citations(all)

1767

Citations(since 2020)

1560

Cited By

593

hIndex(all)

21

hIndex(since 2020)

20

i10Index(all)

26

i10Index(since 2020)

26

Email

University Profile Page

Google Scholar

Antti Vepsäläinen Skills & Research Interests

Quantum engineering

Quantum computing

Top articles of Antti Vepsäläinen

Suppressing leakage in sub-10-ns single-qubit gates using heuristic pulse shape engineering

Bulletin of the American Physical Society

2024/3/5

Suppressing errors in quantum circuits using real-time, closed-loop feedback

Bulletin of the American Physical Society

2024/3/5

Scaling qubit-resonator architectures for co-design quantum computing

Bulletin of the American Physical Society

2024/3/4

Qubit-resonator gates for co-design quantum computing.

Bulletin of the American Physical Society

2024/3/4

Reducing leakage of single-qubit gates for superconducting quantum processors using analytical control pulse envelopes

arXiv preprint arXiv:2402.17757

2024/2/27

Fast Qubit Frequency Tuning Approaches for High-Fidelity CZ Gates in Superconducting Circuits

Bulletin of the American Physical Society

2024/3/6

Active noise cancelation in superconducting Qubits using closed-loop feedback

2023/7/4

On-demand directional microwave photon emission using waveguide quantum electrodynamics

Nature Physics

2023/3

Long-distance transmon coupler as a building block for quantum processors

APS March Meeting Abstracts

2023

Implementing and characterizing high-fidelity two-qubit gates with long-distance transmon coupler

APS March Meeting Abstracts

2023

A co-design superconducting quantum circuit for simulating nanoscale-NMR systems

APS March Meeting Abstracts

2023

Experimental demonstration of robustness under scaling errors for superadiabatic population transfer in a superconducting circuit

Philosophical Transactions of the Royal Society A

2022/12/26

Demonstration of tunable three-body interactions between superconducting qubits

Physical Review Letters

2022/11/21

Identifying noise sources in quantum systems via multi-level noise spectroscopy

2022/7/5

Improving qubit coherence using closed-loop feedback

Nature Communications

2022/4/11

Deep-neural-network discrimination of multiplexed superconducting-qubit states

Physical Review Applied

2022/1/20

On-demand directional photon emission using waveguide quantum electrodynamics

Photonics and Optoelectronics

2022

See List of Professors in Antti Vepsäläinen University(Massachusetts Institute of Technology)